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Channagoud Kadabie9168e82014-01-28 21:33:34 -08001/* Copyright (c) 2013-2014, The Linux Foundation. All rights reserved.
Channagoud Kadabi74ed8352013-03-11 13:12:05 -07002 *
3 * Redistribution and use in source and binary forms, with or without
4 * modification, are permitted provided that the following conditions are
5 * met:
6 * * Redistributions of source code must retain the above copyright
7 * notice, this list of conditions and the following disclaimer.
8 * * Redistributions in binary form must reproduce the above
9 * copyright notice, this list of conditions and the following
10 * disclaimer in the documentation and/or other materials provided
11 * with the distribution.
12 * * Neither the name of The Linux Foundation nor the names of its
13 * contributors may be used to endorse or promote products derived
14 * from this software without specific prior written permission.
15 *
16 * THIS SOFTWARE IS PROVIDED "AS IS" AND ANY EXPRESS OR IMPLIED
17 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
18 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT
19 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS
20 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
21 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
22 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
23 * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
24 * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE
25 * OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN
26 * IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 */
28
29#include <platform/iomap.h>
30#include <platform/irqs.h>
31#include <platform/interrupts.h>
32#include <platform/timer.h>
33#include <kernel/event.h>
34#include <target.h>
35#include <string.h>
36#include <stdlib.h>
37#include <bits.h>
38#include <debug.h>
39#include <sdhci.h>
Channagoud Kadabie9168e82014-01-28 21:33:34 -080040#include <sdhci_msm.h>
Channagoud Kadabi74ed8352013-03-11 13:12:05 -070041
Channagoud Kadabie632e252014-03-31 15:26:00 -070042static void sdhci_dumpregs(struct sdhci_host *host)
43{
44 DBG("****************** SDHC REG DUMP START ********************\n");
45
46 DBG("Version: 0x%08x\n", REG_READ32(host, SDHCI_ARG2_REG));
47 DBG("Arg2: 0x%08x\t Blk Cnt: 0x%08x\n",
48 REG_READ32(host, SDHCI_ARG2_REG),
49 REG_READ16(host, SDHCI_BLK_CNT_REG));
50 DBG("Arg1: 0x%08x\t Blk Sz : 0x%08x\n",
51 REG_READ32(host, SDHCI_ARGUMENT_REG),
52 REG_READ16(host, SDHCI_BLKSZ_REG));
53 DBG("Command: 0x%08x\t Trans mode: 0x%08x\n",
54 REG_READ16(host, SDHCI_CMD_REG),
55 REG_READ16(host, SDHCI_TRANS_MODE_REG));
56 DBG("Resp0: 0x%08x\t Resp1: 0x%08x\n",
57 REG_READ32(host, SDHCI_RESP_REG),
58 REG_READ32(host, SDHCI_RESP_REG + 0x4));
59 DBG("Resp2: 0x%08x\t Resp3: 0x%08x\n",
60 REG_READ32(host, SDHCI_RESP_REG + 0x8),
61 REG_READ32(host, SDHCI_RESP_REG + 0xC));
62 DBG("Prsnt State: 0x%08x\t Host Ctrl1: 0x%08x\n",
63 REG_READ32(host, SDHCI_PRESENT_STATE_REG),
64 REG_READ8(host, SDHCI_HOST_CTRL1_REG));
65 DBG("Timeout ctrl: 0x%08x\t Power Ctrl: 0x%08x\n",
66 REG_READ8(host, SDHCI_TIMEOUT_REG),
67 REG_READ8(host, SDHCI_PWR_CTRL_REG));
68 DBG("Error stat: 0x%08x\t Int Status: 0x%08x\n",
Channagoud Kadabif1746d42014-05-14 18:22:36 -070069 REG_READ16(host, SDHCI_ERR_INT_STS_REG),
70 REG_READ16(host, SDHCI_NRML_INT_STS_REG));
Channagoud Kadabie632e252014-03-31 15:26:00 -070071 DBG("Host Ctrl2: 0x%08x\t Clock ctrl: 0x%08x\n",
Channagoud Kadabif1746d42014-05-14 18:22:36 -070072 REG_READ16(host, SDHCI_HOST_CTRL2_REG),
73 REG_READ16(host, SDHCI_CLK_CTRL_REG));
Channagoud Kadabie632e252014-03-31 15:26:00 -070074 DBG("Caps1: 0x%08x\t Caps2: 0x%08x\n",
75 REG_READ32(host, SDHCI_CAPS_REG1),
76 REG_READ32(host, SDHCI_CAPS_REG1));
77 DBG("Adma Err: 0x%08x\t Auto Cmd err: 0x%08x\n",
78 REG_READ8(host, SDHCI_ADM_ERR_REG),
79 REG_READ16(host, SDHCI_AUTO_CMD_ERR));
80 DBG("Adma addr1: 0x%08x\t Adma addr2: 0x%08x\n",
81 REG_READ32(host, SDHCI_ADM_ADDR_REG),
82 REG_READ32(host, SDHCI_ADM_ADDR_REG + 0x4));
83
84 DBG("****************** SDHC REG DUMP END ********************\n");
85
86 DBG("************* SDHC VENDOR REG DUMPS START ***************\n");
87 DBG("SDCC_DLL_CONFIG_REG: 0x%08x\n", REG_READ32(host, SDCC_DLL_CONFIG_REG));
88 DBG("SDCC_VENDOR_SPECIFIC_FUNC: 0x%08x\n", REG_READ32(host, SDCC_VENDOR_SPECIFIC_FUNC));
89 DBG("SDCC_REG_DLL_STATUS: 0x%08x\n", REG_READ32(host, SDCC_REG_DLL_STATUS));
90 DBG("************* SDHC VENDOR REG DUMPS END ***************\n");
91}
92
Channagoud Kadabi74ed8352013-03-11 13:12:05 -070093/*
Channagoud Kadabi7ad70ea2013-08-08 13:51:04 -070094 * Function: sdhci reset
95 * Arg : Host structure & mask to write to reset register
96 * Return : None
97 * Flow: : Reset the host controller
98 */
Channagoud Kadabi9b8f8fc2013-07-26 12:02:49 -070099void sdhci_reset(struct sdhci_host *host, uint8_t mask)
Channagoud Kadabi7ad70ea2013-08-08 13:51:04 -0700100{
101 uint32_t reg;
102 uint32_t timeout = SDHCI_RESET_MAX_TIMEOUT;
103
104 REG_WRITE8(host, mask, SDHCI_RESET_REG);
105
106 /* Wait for the reset to complete */
107 do {
108 reg = REG_READ8(host, SDHCI_RESET_REG);
109 reg &= mask;
110
111 if (!reg)
112 break;
113 if (!timeout)
114 {
115 dprintf(CRITICAL, "Error: sdhci reset failed for: %x\n", mask);
116 break;
117 }
118
119 timeout--;
120 mdelay(1);
121
122 } while(1);
123}
124
125/*
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700126 * Function: sdhci error status enable
127 * Arg : Host structure
128 * Return : None
129 * Flow: : Enable command error status
130 */
131static void sdhci_error_status_enable(struct sdhci_host *host)
132{
133 /* Enable all interrupt status */
134 REG_WRITE16(host, SDHCI_NRML_INT_STS_EN, SDHCI_NRML_INT_STS_EN_REG);
135 REG_WRITE16(host, SDHCI_ERR_INT_STS_EN, SDHCI_ERR_INT_STS_EN_REG);
136 /* Enable all interrupt signal */
137 REG_WRITE16(host, SDHCI_NRML_INT_SIG_EN, SDHCI_NRML_INT_SIG_EN_REG);
138 REG_WRITE16(host, SDHCI_ERR_INT_SIG_EN, SDHCI_ERR_INT_SIG_EN_REG);
139}
140
141/*
142 * Function: sdhci clock supply
143 * Arg : Host structure
144 * Return : 0 on Success, 1 on Failure
145 * Flow: : 1. Calculate the clock divider
146 * 2. Set the clock divider
147 * 3. Check if clock stable
148 * 4. Enable Clock
149 */
150uint32_t sdhci_clk_supply(struct sdhci_host *host, uint32_t clk)
151{
152 uint32_t div = 0;
153 uint32_t freq = 0;
154 uint16_t clk_val = 0;
155
Channagoud Kadabi9b8f8fc2013-07-26 12:02:49 -0700156 if (clk >= host->caps.base_clk_rate)
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700157 goto clk_ctrl;
158
159 /* As per the sd spec div should be a multiplier of 2 */
160 for (div = 2; div < SDHCI_CLK_MAX_DIV; div += 2) {
161 freq = host->caps.base_clk_rate / div;
162 if (freq <= clk)
163 break;
164 }
165
166 div >>= 1;
167
168clk_ctrl:
169 /* As per the sdhci spec 3.0, bits 6-7 of the clock
170 * control registers will be mapped to bit 8-9, to
171 * support a 10 bit divider value.
172 * This is needed when the divider value overflows
173 * the 8 bit range.
174 */
175 clk_val = ((div & SDHCI_SDCLK_FREQ_MASK) << SDHCI_SDCLK_FREQ_SEL);
176 clk_val |= ((div & SDHC_SDCLK_UP_BIT_MASK) >> SDHCI_SDCLK_FREQ_SEL)
177 << SDHCI_SDCLK_UP_BIT_SEL;
178
179 clk_val |= SDHCI_INT_CLK_EN;
180 REG_WRITE16(host, clk_val, SDHCI_CLK_CTRL_REG);
181
182 /* Check for clock stable */
183 while (!(REG_READ16(host, SDHCI_CLK_CTRL_REG) & SDHCI_CLK_STABLE));
184
185 /* Now clock is stable, enable it */
186 clk_val = REG_READ16(host, SDHCI_CLK_CTRL_REG);
187 clk_val |= SDHCI_CLK_EN;
188 REG_WRITE16(host, clk_val, SDHCI_CLK_CTRL_REG);
189
Channagoud Kadabi9b8f8fc2013-07-26 12:02:49 -0700190 host->cur_clk_rate = clk;
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700191
Channagoud Kadabie632e252014-03-31 15:26:00 -0700192 DBG("\n %s: clock_rate: %d clock_div:0x%08x\n", __func__, clk, div);
193
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700194 return 0;
195}
196
197/*
198 * Function: sdhci stop sdcc clock
199 * Arg : Host structure
200 * Return : 0 on Success, 1 on Failure
201 * Flow: : 1. Stop the clock
202 */
203static uint32_t sdhci_stop_sdcc_clk(struct sdhci_host *host)
204{
205 uint32_t reg;
206
207 reg = REG_READ32(host, SDHCI_PRESENT_STATE_REG);
208
209 if (reg & (SDHCI_CMD_ACT | SDHCI_DAT_ACT)) {
210 dprintf(CRITICAL, "Error: SDCC command & data line are active\n");
211 return 1;
212 }
213
214 REG_WRITE16(host, SDHCI_CLK_DIS, SDHCI_CLK_CTRL_REG);
215
216 return 0;
217}
218
219/*
220 * Function: sdhci change frequency
221 * Arg : Host structure & clock value
222 * Return : 0 on Success, 1 on Failure
223 * Flow: : 1. Stop the clock
224 * 2. Star the clock with new frequency
225 */
226static uint32_t sdhci_change_freq_clk(struct sdhci_host *host, uint32_t clk)
227{
228 if (sdhci_stop_sdcc_clk(host)) {
229 dprintf(CRITICAL, "Error: Card is busy, cannot change frequency\n");
230 return 1;
231 }
232
233 if (sdhci_clk_supply(host, clk)) {
234 dprintf(CRITICAL, "Error: cannot change frequency\n");
235 return 1;
236 }
237
238 return 0;
239}
240
241/*
242 * Function: sdhci set bus power
243 * Arg : Host structure
244 * Return : None
245 * Flow: : 1. Set the voltage
246 * 2. Set the sd power control register
247 */
248static void sdhci_set_bus_power_on(struct sdhci_host *host)
249{
250 uint8_t voltage;
251
252 voltage = host->caps.voltage;
253
254 voltage <<= SDHCI_BUS_VOL_SEL;
Channagoud Kadabi89902512013-05-14 13:22:06 -0700255 REG_WRITE8(host, voltage, SDHCI_PWR_CTRL_REG);
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700256
257 voltage |= SDHCI_BUS_PWR_EN;
258
Channagoud Kadabie632e252014-03-31 15:26:00 -0700259 DBG("\n %s: voltage: 0x%02x\n", __func__, voltage);
260
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700261 REG_WRITE8(host, voltage, SDHCI_PWR_CTRL_REG);
262
263}
264
Channagoud Kadabi9b8f8fc2013-07-26 12:02:49 -0700265
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700266/*
267 * Function: sdhci set SDR mode
Channagoud Kadabi9b8f8fc2013-07-26 12:02:49 -0700268 * Arg : Host structure, UHS mode
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700269 * Return : None
270 * Flow: : 1. Disable the clock
Channagoud Kadabi9b8f8fc2013-07-26 12:02:49 -0700271 * 2. Enable UHS mode
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700272 * 3. Enable the clock
273 * Details : SDR50/SDR104 mode is nothing but HS200
274 * mode SDCC spec refers to it as SDR mode
275 * & emmc spec refers as HS200 mode.
276 */
Channagoud Kadabi9b8f8fc2013-07-26 12:02:49 -0700277void sdhci_set_uhs_mode(struct sdhci_host *host, uint32_t mode)
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700278{
279 uint16_t clk;
280 uint16_t ctrl = 0;
Channagoud Kadabi9b8f8fc2013-07-26 12:02:49 -0700281 uint32_t clk_val = 0;
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700282
283 /* Disable the clock */
284 clk = REG_READ16(host, SDHCI_CLK_CTRL_REG);
285 clk &= ~SDHCI_CLK_EN;
286 REG_WRITE16(host, clk, SDHCI_CLK_CTRL_REG);
287
288 ctrl = REG_READ16(host, SDHCI_HOST_CTRL2_REG);
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700289
Channagoud Kadabi9b8f8fc2013-07-26 12:02:49 -0700290 ctrl &= ~SDHCI_UHS_MODE_MASK;
291
292 /* Enable SDR50/SDR104/DDR50 mode */
293 switch (mode)
294 {
295 case SDHCI_SDR104_MODE:
296 ctrl |= SDHCI_SDR104_MODE_EN;
297 clk_val = SDHCI_CLK_200MHZ;
298 break;
299 case SDHCI_SDR50_MODE:
300 ctrl |= SDHCI_SDR50_MODE_EN;
301 clk_val = SDHCI_CLK_100MHZ;
302 break;
303 case SDHCI_DDR50_MODE:
304 ctrl |= SDHCI_DDR50_MODE_EN;
305 clk_val = SDHCI_CLK_50MHZ;
306 break;
307 case SDHCI_SDR25_MODE:
308 ctrl |= SDHCI_SDR25_MODE_EN;
309 clk_val = SDHCI_CLK_50MHZ;
310 break;
311 case SDHCI_SDR12_MODE_EN:
312 ctrl |= SDHCI_SDR12_MODE_EN;
313 clk_val = SDHCI_CLK_25MHZ;
314 break;
315 default:
316 dprintf(CRITICAL, "Error: Invalid UHS mode: %x\n", mode);
317 ASSERT(0);
318 };
319
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700320 REG_WRITE16(host, ctrl, SDHCI_HOST_CTRL2_REG);
321
322 /* Run the clock back */
Channagoud Kadabi9b8f8fc2013-07-26 12:02:49 -0700323 sdhci_clk_supply(host, clk_val);
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700324}
325
326/*
327 * Function: sdhci set adma mode
328 * Arg : Host structure
329 * Return : None
330 * Flow: : Set adma mode
331 */
332static void sdhci_set_adma_mode(struct sdhci_host *host)
333{
334 /* Select 32 Bit ADMA2 type */
335 REG_WRITE8(host, SDHCI_ADMA_32BIT, SDHCI_HOST_CTRL1_REG);
336}
337
338/*
339 * Function: sdhci set bus width
340 * Arg : Host & width
341 * Return : 0 on Sucess, 1 on Failure
342 * Flow: : Set the bus width for controller
343 */
344uint8_t sdhci_set_bus_width(struct sdhci_host *host, uint16_t width)
345{
346 uint16_t reg = 0;
347
348 reg = REG_READ8(host, SDHCI_HOST_CTRL1_REG);
349
350 switch(width) {
351 case DATA_BUS_WIDTH_8BIT:
352 width = SDHCI_BUS_WITDH_8BIT;
353 break;
354 case DATA_BUS_WIDTH_4BIT:
355 width = SDHCI_BUS_WITDH_4BIT;
356 break;
357 case DATA_BUS_WIDTH_1BIT:
358 width = SDHCI_BUS_WITDH_1BIT;
359 break;
360 default:
361 dprintf(CRITICAL, "Bus width is invalid: %u\n", width);
362 return 1;
363 }
364
Channagoud Kadabie632e252014-03-31 15:26:00 -0700365 DBG("\n %s: bus width:0x%04x\n", __func__, width);
366
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700367 REG_WRITE8(host, (reg | width), SDHCI_HOST_CTRL1_REG);
368
369 return 0;
370}
371
372/*
373 * Function: sdhci command err status
374 * Arg : Host structure
375 * Return : 0 on Sucess, 1 on Failure
376 * Flow: : Look for error status
377 */
378static uint8_t sdhci_cmd_err_status(struct sdhci_host *host)
379{
380 uint32_t err;
381
382 err = REG_READ16(host, SDHCI_ERR_INT_STS_REG);
383
384 if (err & SDHCI_CMD_TIMEOUT_MASK) {
385 dprintf(CRITICAL, "Error: Command timeout error\n");
386 return 1;
387 } else if (err & SDHCI_CMD_CRC_MASK) {
388 dprintf(CRITICAL, "Error: Command CRC error\n");
389 return 1;
390 } else if (err & SDHCI_CMD_END_BIT_MASK) {
391 dprintf(CRITICAL, "Error: CMD end bit error\n");
392 return 1;
393 } else if (err & SDHCI_CMD_IDX_MASK) {
394 dprintf(CRITICAL, "Error: Command Index error\n");
395 return 1;
396 } else if (err & SDHCI_DAT_TIMEOUT_MASK) {
397 dprintf(CRITICAL, "Error: DATA time out error\n");
398 return 1;
399 } else if (err & SDHCI_DAT_CRC_MASK) {
400 dprintf(CRITICAL, "Error: DATA CRC error\n");
401 return 1;
402 } else if (err & SDHCI_DAT_END_BIT_MASK) {
403 dprintf(CRITICAL, "Error: DATA end bit error\n");
404 return 1;
405 } else if (err & SDHCI_CUR_LIM_MASK) {
406 dprintf(CRITICAL, "Error: Current limit error\n");
407 return 1;
408 } else if (err & SDHCI_AUTO_CMD12_MASK) {
409 dprintf(CRITICAL, "Error: Auto CMD12 error\n");
410 return 1;
411 } else if (err & SDHCI_ADMA_MASK) {
412 dprintf(CRITICAL, "Error: ADMA error\n");
413 return 1;
414 }
415
416 return 0;
417}
418
419/*
420 * Function: sdhci command complete
421 * Arg : Host & command structure
422 * Return : 0 on Sucess, 1 on Failure
423 * Flow: : 1. Check for command complete
424 * 2. Check for transfer complete
425 * 3. Get the command response
426 * 4. Check for errors
427 */
428static uint8_t sdhci_cmd_complete(struct sdhci_host *host, struct mmc_command *cmd)
429{
430 uint8_t i;
Channagoud Kadabi6b649cd2013-09-19 13:19:49 -0700431 uint8_t ret = 0;
432 uint8_t need_reset = 0;
Channagoud Kadabi2e233e72013-06-06 14:09:57 -0700433 uint32_t retry = 0;
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700434 uint32_t int_status;
Channagoud Kadabi6b649cd2013-09-19 13:19:49 -0700435 uint32_t trans_complete = 0;
Channagoud Kadabi9b8f8fc2013-07-26 12:02:49 -0700436 uint32_t err_status;
Channagoud Kadabie86a40b2014-03-12 17:48:51 -0700437 uint64_t max_trans_retry = (cmd->cmd_timeout ? cmd->cmd_timeout : SDHCI_MAX_TRANS_RETRY);
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700438
439 do {
440 int_status = REG_READ16(host, SDHCI_NRML_INT_STS_REG);
441 int_status &= SDHCI_INT_STS_CMD_COMPLETE;
442
443 if (int_status == SDHCI_INT_STS_CMD_COMPLETE)
444 break;
445
Channagoud Kadabie632e252014-03-31 15:26:00 -0700446 /*
Channagoud Kadabi18748bb2014-06-04 17:58:19 -0700447 * If Tuning is in progress ignore cmd crc, cmd timeout & cmd end bit errors
Channagoud Kadabie632e252014-03-31 15:26:00 -0700448 */
449 if (host->tuning_in_progress)
450 {
451 err_status = REG_READ16(host, SDHCI_ERR_INT_STS_REG);
Channagoud Kadabi756e1e32014-06-05 13:00:55 -0700452 if ((err_status & SDHCI_CMD_CRC_MASK) || (err_status & SDHCI_CMD_END_BIT_MASK)
Channagoud Kadabi18748bb2014-06-04 17:58:19 -0700453 || err_status & SDHCI_CMD_TIMEOUT_MASK)
Channagoud Kadabie632e252014-03-31 15:26:00 -0700454 {
455 sdhci_reset(host, (SOFT_RESET_CMD | SOFT_RESET_DATA));
456 return 0;
457 }
458 }
459
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700460 retry++;
461 udelay(500);
462 if (retry == SDHCI_MAX_CMD_RETRY) {
463 dprintf(CRITICAL, "Error: Command never completed\n");
Channagoud Kadabi6b649cd2013-09-19 13:19:49 -0700464 ret = 1;
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700465 goto err;
466 }
467 } while(1);
468
469 /* Command is complete, clear the interrupt bit */
470 REG_WRITE16(host, SDHCI_INT_STS_CMD_COMPLETE, SDHCI_NRML_INT_STS_REG);
471
472 /* Copy the command response,
473 * The valid bits for R2 response are 0-119, & but the actual response
474 * is stored in bits 8-128. We need to move 8 bits of MSB of each
475 * response to register 8 bits of LSB of next response register.
476 * As:
477 * MSB 8 bits of RESP0 --> LSB 8 bits of RESP1
478 * MSB 8 bits of RESP1 --> LSB 8 bits of RESP2
479 * MSB 8 bits of RESP2 --> LSB 8 bits of RESP3
480 */
481 if (cmd->resp_type == SDHCI_CMD_RESP_R2) {
482 for (i = 0; i < 4; i++) {
483 cmd->resp[i] = REG_READ32(host, SDHCI_RESP_REG + (i * 4));
484 cmd->resp[i] <<= SDHCI_RESP_LSHIFT;
485
486 if (i != 0)
487 cmd->resp[i] |= (REG_READ32(host, SDHCI_RESP_REG + ((i-1) * 4)) >> SDHCI_RESP_RSHIFT);
488 }
489 } else
490 cmd->resp[0] = REG_READ32(host, SDHCI_RESP_REG);
491
492 retry = 0;
493
494 /*
495 * Clear the transfer complete interrupt
496 */
Channagoud Kadabi709ce1c2013-05-29 15:19:15 -0700497 if (cmd->data_present || cmd->resp_type == SDHCI_CMD_RESP_R1B) {
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700498 do {
499 int_status = REG_READ16(host, SDHCI_NRML_INT_STS_REG);
500 int_status &= SDHCI_INT_STS_TRANS_COMPLETE;
501
502 if (int_status & SDHCI_INT_STS_TRANS_COMPLETE)
Channagoud Kadabi6b649cd2013-09-19 13:19:49 -0700503 {
504 trans_complete = 1;
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700505 break;
Channagoud Kadabi6b649cd2013-09-19 13:19:49 -0700506 }
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700507
Channagoud Kadabi9b8f8fc2013-07-26 12:02:49 -0700508 /*
509 * If we are in tuning then we need to wait until Data timeout , Data end
510 * or Data CRC error
511 */
512 if (host->tuning_in_progress)
513 {
514 err_status = REG_READ16(host, SDHCI_ERR_INT_STS_REG);
515 if ((err_status & SDHCI_DAT_TIMEOUT_MASK) || (err_status & SDHCI_DAT_CRC_MASK))
516 {
517 sdhci_reset(host, (SOFT_RESET_CMD | SOFT_RESET_DATA));
518 return 0;
519 }
520 }
521
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700522 retry++;
523 udelay(1000);
Channagoud Kadabie86a40b2014-03-12 17:48:51 -0700524 if (retry == max_trans_retry) {
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700525 dprintf(CRITICAL, "Error: Transfer never completed\n");
Channagoud Kadabi6b649cd2013-09-19 13:19:49 -0700526 ret = 1;
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700527 goto err;
528 }
529 } while(1);
530
531 /* Transfer is complete, clear the interrupt bit */
532 REG_WRITE16(host, SDHCI_INT_STS_TRANS_COMPLETE, SDHCI_NRML_INT_STS_REG);
533 }
534
535err:
536 /* Look for errors */
537 int_status = REG_READ16(host, SDHCI_NRML_INT_STS_REG);
Channagoud Kadabi6b649cd2013-09-19 13:19:49 -0700538
539 if (int_status & SDHCI_ERR_INT_STAT_MASK)
540 {
541 /*
542 * As per SDHC spec transfer complete has higher priority than data timeout
543 * If both transfer complete & data timeout are set then we should ignore
544 * data timeout error.
545 * ---------------------------------------------------------------------------
546 * | Transfer complete | Data timeout error | Meaning of the Status |
547 * |--------------------------------------------------------------------------|
548 * | 0 | 0 | Interrupted by another factor |
549 * |--------------------------------------------------------------------------|
550 * | 0 | 1 | Time out occured during transfer|
551 * |--------------------------------------------------------------------------|
552 * | 1 | Don't Care | Command execution complete |
553 * --------------------------------------------------------------------------
554 */
555 if ((REG_READ16(host, SDHCI_ERR_INT_STS_REG) & SDHCI_DAT_TIMEOUT_MASK) && trans_complete)
556 {
557 ret = 0;
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700558 }
Channagoud Kadabi6b649cd2013-09-19 13:19:49 -0700559 else if (sdhci_cmd_err_status(host))
560 {
Channagoud Kadabi6b649cd2013-09-19 13:19:49 -0700561 ret = 1;
Channagoud Kadabie632e252014-03-31 15:26:00 -0700562 /* Dump sdhc registers on error */
563 sdhci_dumpregs(host);
Channagoud Kadabi6b649cd2013-09-19 13:19:49 -0700564 }
565 /* Reset Command & Dat lines on error */
566 need_reset = 1;
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700567 }
568
569 /* Reset data & command line */
Channagoud Kadabie4cab762014-07-08 17:26:06 -0700570 if (need_reset)
Channagoud Kadabi7ad70ea2013-08-08 13:51:04 -0700571 sdhci_reset(host, (SOFT_RESET_CMD | SOFT_RESET_DATA));
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700572
Channagoud Kadabi6b649cd2013-09-19 13:19:49 -0700573 return ret;
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700574}
575
576/*
577 * Function: sdhci prep desc table
578 * Arg : Pointer data & length
579 * Return : Pointer to desc table
580 * Flow: : Prepare the adma table as per the sd spec v 3.0
581 */
582static struct desc_entry *sdhci_prep_desc_table(void *data, uint32_t len)
583{
584 struct desc_entry *sg_list;
585 uint32_t sg_len = 0;
586 uint32_t remain = 0;
587 uint32_t i;
588 uint32_t table_len = 0;
589
590 if (len <= SDHCI_ADMA_DESC_LINE_SZ) {
591 /* Allocate only one descriptor */
Channagoud Kadabi2e233e72013-06-06 14:09:57 -0700592 sg_list = (struct desc_entry *) memalign(lcm(4, CACHE_LINE), ROUNDUP(sizeof(struct desc_entry), CACHE_LINE));
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700593
594 if (!sg_list) {
595 dprintf(CRITICAL, "Error allocating memory\n");
596 ASSERT(0);
597 }
598
Channagoud Kadabi2e233e72013-06-06 14:09:57 -0700599 sg_list[0].addr = (uint32_t)data;
Channagoud Kadabi942a8df2013-06-20 14:30:49 -0700600 sg_list[0].len = (len < SDHCI_ADMA_DESC_LINE_SZ) ? len : (SDHCI_ADMA_DESC_LINE_SZ & 0xffff);
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700601 sg_list[0].tran_att = SDHCI_ADMA_TRANS_VALID | SDHCI_ADMA_TRANS_DATA
602 | SDHCI_ADMA_TRANS_END;
603
Channagoud Kadabie632e252014-03-31 15:26:00 -0700604 sg_len = 1;
605 table_len = sizeof(struct desc_entry);
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700606 } else {
607 /* Calculate the number of entries in desc table */
608 sg_len = len / SDHCI_ADMA_DESC_LINE_SZ;
609 remain = len - (sg_len * SDHCI_ADMA_DESC_LINE_SZ);
Channagoud Kadabi2e233e72013-06-06 14:09:57 -0700610
611 /* Allocate sg_len + 1 entries if there are remaining bytes at the end */
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700612 if (remain)
613 sg_len++;
614
615 table_len = (sg_len * sizeof(struct desc_entry));
616
Channagoud Kadabi2e233e72013-06-06 14:09:57 -0700617 sg_list = (struct desc_entry *) memalign(lcm(4, CACHE_LINE), ROUNDUP(table_len, CACHE_LINE));
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700618
619 if (!sg_list) {
620 dprintf(CRITICAL, "Error allocating memory\n");
621 ASSERT(0);
622 }
623
624 memset((void *) sg_list, 0, table_len);
625
626 /*
627 * Prepare sglist in the format:
628 * ___________________________________________________
629 * |Transfer Len | Transfer ATTR | Data Address |
630 * | (16 bit) | (16 bit) | (32 bit) |
631 * |_____________|_______________|_____________________|
632 */
633 for (i = 0; i < (sg_len - 1); i++) {
Channagoud Kadabi2e233e72013-06-06 14:09:57 -0700634 sg_list[i].addr = (uint32_t)data;
Channagoud Kadabi942a8df2013-06-20 14:30:49 -0700635 /*
636 * Length attribute is 16 bit value & max transfer size for one
637 * descriptor line is 65536 bytes, As per SD Spec3.0 'len = 0'
638 * implies 65536 bytes. Truncate the length to limit to 16 bit
639 * range.
640 */
641 sg_list[i].len = (SDHCI_ADMA_DESC_LINE_SZ & 0xffff);
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700642 sg_list[i].tran_att = SDHCI_ADMA_TRANS_VALID | SDHCI_ADMA_TRANS_DATA;
643 data += SDHCI_ADMA_DESC_LINE_SZ;
644 len -= SDHCI_ADMA_DESC_LINE_SZ;
645 }
646
647 /* Fill the last entry of the table with Valid & End
648 * attributes
649 */
Channagoud Kadabi2e233e72013-06-06 14:09:57 -0700650 sg_list[sg_len - 1].addr = (uint32_t)data;
Channagoud Kadabi942a8df2013-06-20 14:30:49 -0700651 sg_list[sg_len - 1].len = (len < SDHCI_ADMA_DESC_LINE_SZ) ? len : (SDHCI_ADMA_DESC_LINE_SZ & 0xffff);
Channagoud Kadabi2e233e72013-06-06 14:09:57 -0700652 sg_list[sg_len - 1].tran_att = SDHCI_ADMA_TRANS_VALID | SDHCI_ADMA_TRANS_DATA |
653 SDHCI_ADMA_TRANS_END;
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700654 }
655
656 arch_clean_invalidate_cache_range((addr_t)sg_list, table_len);
657
Channagoud Kadabie632e252014-03-31 15:26:00 -0700658 for (i = 0; i < sg_len; i++)
659 {
660 DBG("\n %s: sg_list: addr: 0x%08x len: 0x%04x attr: 0x%04x\n", __func__, sg_list[i].addr,
661 (sg_list[i].len ? sg_list[i].len : SDHCI_ADMA_DESC_LINE_SZ), sg_list[i].tran_att);
662 }
663
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700664 return sg_list;
665}
666
667/*
668 * Function: sdhci adma transfer
669 * Arg : Host structure & command stucture
670 * Return : Pointer to desc table
Channagoud Kadabi2e233e72013-06-06 14:09:57 -0700671 * Flow : 1. Prepare descriptor table
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700672 * 2. Write adma register
Channagoud Kadabi2e233e72013-06-06 14:09:57 -0700673 * 3. Write block size & block count register
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700674 */
675static struct desc_entry *sdhci_adma_transfer(struct sdhci_host *host,
676 struct mmc_command *cmd)
677{
678 uint32_t num_blks = 0;
679 uint32_t sz;
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700680 void *data;
681 struct desc_entry *adma_addr;
682
683
684 num_blks = cmd->data.num_blocks;
685 data = cmd->data.data_ptr;
686
Channagoud Kadabi709ce1c2013-05-29 15:19:15 -0700687 /*
688 * Some commands send data on DAT lines which is less
689 * than SDHCI_MMC_BLK_SZ, in that case trying to read
690 * more than the data sent by the card results in data
691 * CRC errors. To avoid such errors allow data to pass
692 * the required block size, if the block size is not
693 * passed use the default value
694 */
695 if (cmd->data.blk_sz)
696 sz = num_blks * cmd->data.blk_sz;
697 else
698 sz = num_blks * SDHCI_MMC_BLK_SZ;
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700699
700 /* Prepare adma descriptor table */
701 adma_addr = sdhci_prep_desc_table(data, sz);
702
Channagoud Kadabi2e233e72013-06-06 14:09:57 -0700703 /* Write adma address to adma register */
704 REG_WRITE32(host, (uint32_t) adma_addr, SDHCI_ADM_ADDR_REG);
705
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700706 /* Write the block size */
Channagoud Kadabi709ce1c2013-05-29 15:19:15 -0700707 if (cmd->data.blk_sz)
708 REG_WRITE16(host, cmd->data.blk_sz, SDHCI_BLKSZ_REG);
709 else
710 REG_WRITE16(host, SDHCI_MMC_BLK_SZ, SDHCI_BLKSZ_REG);
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700711
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700712 /*
713 * Set block count in block count register
714 */
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700715 REG_WRITE16(host, num_blks, SDHCI_BLK_CNT_REG);
716
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700717 return adma_addr;
718}
719
720/*
721 * Function: sdhci send command
722 * Arg : Host structure & command stucture
723 * Return : 0 on Success, 1 on Failure
724 * Flow: : 1. Prepare the command register
725 * 2. If data is present, prepare adma table
726 * 3. Run the command
727 * 4. Check for command results & take action
728 */
729uint32_t sdhci_send_command(struct sdhci_host *host, struct mmc_command *cmd)
730{
Channagoud Kadabid26eacc2014-06-09 11:41:55 -0700731 uint32_t ret = 0;
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700732 uint8_t retry = 0;
733 uint32_t resp_type = 0;
Channagoud Kadabi2e233e72013-06-06 14:09:57 -0700734 uint16_t trans_mode = 0;
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700735 uint16_t present_state;
736 uint32_t flags;
737 struct desc_entry *sg_list = NULL;
738
Channagoud Kadabif1746d42014-05-14 18:22:36 -0700739 DBG("\n %s: START: cmd:%04d, arg:0x%08x, resp_type:0x%04x, data_present:%d\n",
Channagoud Kadabie632e252014-03-31 15:26:00 -0700740 __func__, cmd->cmd_index, cmd->argument, cmd->resp_type, cmd->data_present);
741
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700742 if (cmd->data_present)
743 ASSERT(cmd->data.data_ptr);
744
745 /*
746 * Assert if the data buffer is not aligned to cache
747 * line size for read operations.
748 * For write operations this function assumes that
749 * the cache is already flushed by the caller. As
750 * the data buffer we receive for write operation
751 * may not be aligned to cache boundary due to
752 * certain image formats like sparse image.
753 */
754 if (cmd->trans_mode == SDHCI_READ_MODE)
755 ASSERT(IS_CACHE_LINE_ALIGNED(cmd->data.data_ptr));
756
757 do {
758 present_state = REG_READ32(host, SDHCI_PRESENT_STATE_REG);
759 /* check if CMD & DAT lines are free */
760 present_state &= SDHCI_STATE_CMD_DAT_MASK;
761
762 if (!present_state)
763 break;
764 udelay(1000);
765 retry++;
766 if (retry == 10) {
767 dprintf(CRITICAL, "Error: CMD or DAT lines were never freed\n");
768 return 1;
769 }
770 } while(1);
771
772 switch(cmd->resp_type) {
773 case SDHCI_CMD_RESP_R1:
774 case SDHCI_CMD_RESP_R3:
775 case SDHCI_CMD_RESP_R6:
776 case SDHCI_CMD_RESP_R7:
777 /* Response of length 48 have 32 bits
778 * of response data stored in RESP0[0:31]
779 */
780 resp_type = SDHCI_CMD_RESP_48;
781 break;
782
783 case SDHCI_CMD_RESP_R2:
784 /* Response of length 136 have 120 bits
785 * of response data stored in RESP0[0:119]
786 */
787 resp_type = SDHCI_CMD_RESP_136;
788 break;
789
790 case SDHCI_CMD_RESP_R1B:
791 /* Response of length 48 have 32 bits
792 * of response data stored in RESP0[0:31]
793 * & set CARD_BUSY status if card is busy
794 */
795 resp_type = SDHCI_CMD_RESP_48_BUSY;
796 break;
797
798 case SDHCI_CMD_RESP_NONE:
799 resp_type = SDHCI_CMD_RESP_NONE;
800 break;
801
802 default:
803 dprintf(CRITICAL, "Invalid response type for the command\n");
804 return 1;
805 };
806
807 flags = (resp_type << SDHCI_CMD_RESP_TYPE_SEL_BIT);
808 flags |= (cmd->data_present << SDHCI_CMD_DATA_PRESENT_BIT);
809 flags |= (cmd->cmd_type << SDHCI_CMD_CMD_TYPE_BIT);
810
Channagoud Kadabie632e252014-03-31 15:26:00 -0700811 /* Enable Command CRC & Index check for commands with response
812 * R1, R6, R7 & R1B. Also only CRC check for R2 response
813 */
814 switch(cmd->resp_type) {
815 case SDHCI_CMD_RESP_R1:
816 case SDHCI_CMD_RESP_R6:
817 case SDHCI_CMD_RESP_R7:
818 case SDHCI_CMD_RESP_R1B:
819 flags |= (1 << SDHCI_CMD_CRC_CHECK_BIT) | (1 << SDHCI_CMD_IDX_CHECK_BIT);
820 break;
821 case SDHCI_CMD_RESP_R2:
822 flags |= (1 << SDHCI_CMD_CRC_CHECK_BIT);
823 break;
824 default:
825 break;
826 };
827
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700828 /* Set the timeout value */
829 REG_WRITE8(host, SDHCI_CMD_TIMEOUT, SDHCI_TIMEOUT_REG);
830
831 /* Check if data needs to be processed */
832 if (cmd->data_present)
833 sg_list = sdhci_adma_transfer(host, cmd);
834
835 /* Write the argument 1 */
836 REG_WRITE32(host, cmd->argument, SDHCI_ARGUMENT_REG);
837
Channagoud Kadabi2e233e72013-06-06 14:09:57 -0700838 /* Set the Transfer mode */
839 if (cmd->data_present)
840 {
841 /* Enable DMA */
842 trans_mode |= SDHCI_DMA_EN;
843
844 if (cmd->trans_mode == SDHCI_MMC_READ)
845 trans_mode |= SDHCI_READ_MODE;
846
Channagoud Kadabi89902512013-05-14 13:22:06 -0700847 /* Enable auto cmd23 or cmd12 for multi block transfer
848 * based on what command card supports
849 */
Channagoud Kadabi2e233e72013-06-06 14:09:57 -0700850 if (cmd->data.num_blocks > 1) {
Channagoud Kadabi89902512013-05-14 13:22:06 -0700851 if (cmd->cmd23_support) {
852 trans_mode |= SDHCI_TRANS_MULTI | SDHCI_AUTO_CMD23_EN | SDHCI_BLK_CNT_EN;
853 REG_WRITE32(host, cmd->data.num_blocks, SDHCI_ARG2_REG);
854 }
855 else
856 trans_mode |= SDHCI_TRANS_MULTI | SDHCI_AUTO_CMD12_EN | SDHCI_BLK_CNT_EN;
Channagoud Kadabi2e233e72013-06-06 14:09:57 -0700857 }
858 }
859
860 /* Write to transfer mode register */
861 REG_WRITE16(host, trans_mode, SDHCI_TRANS_MODE_REG);
862
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700863 /* Write the command register */
864 REG_WRITE16(host, SDHCI_PREP_CMD(cmd->cmd_index, flags), SDHCI_CMD_REG);
865
866 /* Command complete sequence */
867 if (sdhci_cmd_complete(host, cmd))
Channagoud Kadabid26eacc2014-06-09 11:41:55 -0700868 {
869 ret = 1;
870 goto err;
871 }
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700872
873 /* Invalidate the cache only for read operations */
874 if (cmd->trans_mode == SDHCI_MMC_READ)
875 arch_invalidate_cache_range((addr_t)cmd->data.data_ptr, (cmd->data.num_blocks * SDHCI_MMC_BLK_SZ));
876
Channagoud Kadabid26eacc2014-06-09 11:41:55 -0700877 DBG("\n %s: END: cmd:%04d, arg:0x%08x, resp:0x%08x 0x%08x 0x%08x 0x%08x\n",
878 __func__, cmd->cmd_index, cmd->argument, cmd->resp[0], cmd->resp[1], cmd->resp[2], cmd->resp[3]);
879err:
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700880 /* Free the scatter/gather list */
881 if (sg_list)
882 free(sg_list);
883
Channagoud Kadabid26eacc2014-06-09 11:41:55 -0700884 return ret;
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700885}
886
887/*
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700888 * Function: sdhci init
889 * Arg : Host structure
890 * Return : None
891 * Flow: : 1. Reset the controller
892 * 2. Read the capabilities register & populate the host
893 * controller capabilities for use by other functions
894 * 3. Enable the power control
895 * 4. Set initial bus width
896 * 5. Set Adma mode
897 * 6. Enable the error status
898 */
899void sdhci_init(struct sdhci_host *host)
900{
901 uint32_t caps[2];
Channagoud Kadabi756e1e32014-06-05 13:00:55 -0700902 uint32_t version;
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700903
904 /* Read the capabilities register & store the info */
905 caps[0] = REG_READ32(host, SDHCI_CAPS_REG1);
906 caps[1] = REG_READ32(host, SDHCI_CAPS_REG2);
907
Channagoud Kadabie632e252014-03-31 15:26:00 -0700908
909 DBG("\n %s: Host capability: cap1:0x%08x, cap2: 0x%08x\n", __func__, caps[0], caps[1]);
910
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700911 host->caps.base_clk_rate = (caps[0] & SDHCI_CLK_RATE_MASK) >> SDHCI_CLK_RATE_BIT;
912 host->caps.base_clk_rate *= 1000000;
913
914 /* Get the max block length for mmc */
915 host->caps.max_blk_len = (caps[0] & SDHCI_BLK_LEN_MASK) >> SDHCI_BLK_LEN_BIT;
916
917 /* 8 bit Bus width */
918 if (caps[0] & SDHCI_8BIT_WIDTH_MASK)
919 host->caps.bus_width_8bit = 1;
920
921 /* Adma support */
922 if (caps[0] & SDHCI_BLK_ADMA_MASK)
923 host->caps.adma_support = 1;
924
925 /* Supported voltage */
926 if (caps[0] & SDHCI_3_3_VOL_MASK)
927 host->caps.voltage = SDHCI_VOL_3_3;
928 else if (caps[0] & SDHCI_3_0_VOL_MASK)
929 host->caps.voltage = SDHCI_VOL_3_0;
930 else if (caps[0] & SDHCI_1_8_VOL_MASK)
931 host->caps.voltage = SDHCI_VOL_1_8;
932
933 /* DDR mode support */
Channagoud Kadabi9b8f8fc2013-07-26 12:02:49 -0700934 host->caps.ddr_support = (caps[1] & SDHCI_DDR50_MODE_MASK) ? 1 : 0;
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700935
936 /* SDR50 mode support */
937 host->caps.sdr50_support = (caps[1] & SDHCI_SDR50_MODE_MASK) ? 1 : 0;
938
Channagoud Kadabi9b8f8fc2013-07-26 12:02:49 -0700939 /* SDR104 mode support */
940 host->caps.sdr104_support = (caps[1] & SDHCI_SDR104_MODE_MASK) ? 1 : 0;
941
Channagoud Kadabi756e1e32014-06-05 13:00:55 -0700942 version = readl(host->msm_host->pwrctl_base + MCI_VERSION);
943
944 host->major = (version & CORE_VERSION_MAJOR_MASK) >> CORE_VERSION_MAJOR_SHIFT;
945 host->minor = (version & CORE_VERSION_MINOR_MASK);
946
947 if (host->major == 0x1 && host->minor < 0x34)
948 host->use_cdclp533 = true;
949 else
950 host->use_cdclp533 = false;
951
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700952 /* Set bus power on */
953 sdhci_set_bus_power_on(host);
954
955 /* Wait for power interrupt to be handled */
Channagoud Kadabi89902512013-05-14 13:22:06 -0700956 event_wait(host->sdhc_event);
Channagoud Kadabi74ed8352013-03-11 13:12:05 -0700957
958 /* Set bus width */
959 sdhci_set_bus_width(host, SDHCI_BUS_WITDH_1BIT);
960
961 /* Set Adma mode */
962 sdhci_set_adma_mode(host);
963
964 /*
965 * Enable error status
966 */
967 sdhci_error_status_enable(host);
968}